Amanote Research
Register
Sign In
Biomass-Tar-Enabled Nitrogen-Doped Highly Ultramicroporous Carbon as an Efficient Absorbent for CO2 Capture
doi 10.1021/acs.energyfuels.9b01638.s001
Full Text
Open PDF
Abstract
Available in
full text
Date
Unknown
Authors
Unknown
Publisher
American Chemical Society (ACS)
Related search
Nitro Lignin-Derived Nitrogen-Doped Carbon as an Efficient and Sustainable Electrocatalyst for Oxygen Reduction
Nitrogen Self-Doped Porous Carbon Materials Derived From a New Biomass Source for Highly Stable Supercapacitors
International Journal of Electrochemical Science
Electrochemistry
Hollow Nitrogen-Doped Carbon Spheres as Efficient and Durable Electrocatalysts for Oxygen Reduction
Chemical Communications
Surfaces
Alloys
Materials Chemistry
Coatings
Metals
Optical
Magnetic Materials
Films
Catalysis
Chemistry
Electronic
Composites
Ceramics
Molecular Layer Deposition-Modified 5A Zeolite for Highly Efficient CO2 Capture
Nitrogen-Doped Magnetic Carbon Nanoparticles as Catalyst Supports for Efficient Recovery and Recycling
Chemical Communications
Surfaces
Alloys
Materials Chemistry
Coatings
Metals
Optical
Magnetic Materials
Films
Catalysis
Chemistry
Electronic
Composites
Ceramics
Nitrogen-Doped Magnetic Carbon Nanoparticles as Catalyst Supports for Efficient Recovery and Recycling.
ChemInform
NiFe2O4@ Nitrogen-Doped Carbon Hollow Spheres With Highly Efficient and Recyclable Adsorption of Tetracycline
RSC Advances
Chemistry
Chemical Engineering
Reversible Capture of CO2 by Cucurbit[7]uril Absorbent
Nitrogen-Doped Porous Activated Carbon Derived From Cocoon Silk as a Highly Efficient Metal-Free Electrocatalyst for the Oxygen Reduction Reaction
RSC Advances
Chemistry
Chemical Engineering